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Role of Osmotic Potential Gradients during Water Stress and Leaf Senescence in Fragaria virginiana

机译:渗透率梯度在草莓和草莓水分胁迫和叶片衰老中的作用

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摘要

The physiological basis underlying differences in sensitivity of different aged leaves to water stress was investigated in Fragaria virginiana Duchesne. Differential susceptibility of only older leaves to water stress in the field during summer months appeared related to gradients in leaf osmotic potential within the plant and by an age dependency in the ability of leaves to adjust osmotically when challenged by periodic water deficits. Under greenhouse conditions, older leaves senesced invariably during an imposed water stress while control leaves of comparable age and stressed younger leaves remained green. Osmotic potentials of intermediate aged and younger leaves became approximately 1 to 2 bars lower after a single cycle of imposed stress and up to 10 bars lower after two cycles of stress. Pronounced gradients in leaf osmotic potential within individual whole plants were observed following two cycles of water stress that were significantly different from control values. Osmotic adjustment was dependent on leaf age with the greatest capacity for adjustment in the intermediate aged leaves. Loss of osmotic adjustment was rapid upon rewatering with a half-life of 4 days. An irreversible component of adjustment was observed, amounting to about 10% (or 2 bars) of the maximally adjusted state. This irreversible component could be accounted for in part by significant changes in cell size and other anatomical alterations in the leaf that affect cellular osmotic volume, and, hence, cellular water relations.
机译:在欧洲草莓(Fragaria virginiana Duchesne)中研究了不同衰老叶片对水分胁迫的敏感性差异的生理基础。夏季月份中,田间仅较老的叶片对水分胁迫的差异敏感性与植物内叶片渗透势的梯度有关,并且受周期性水分亏缺挑战时叶片渗透调节能力的年龄依赖性。在温室条件下,在施加水分胁迫下,较老的叶片总是感觉衰弱,而同龄和较重的较年轻叶片的对照叶片仍保持绿色。中度衰老的叶片的渗透势在施加一个压力周期后降低了约1至2 bar,而在两个应力周期后降低了10 bar。在两个周期的水分胁迫下,与对照值显着不同,在整个植物中观察到了叶片渗透势的明显梯度。渗透调节取决于叶龄,中间衰老叶片具有最大的调节能力。再浇水后,渗透调节的损失很快,半衰期为4天。观察到不可调节的调节成分,约占最大调节状态的10%(或2 bar)。这种不可逆的成分可以部分归因于细胞大小的显着变化以及影响细胞渗透量并因此影响细胞水关系的其他叶片解剖变化。

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